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Immunoglobulin deposition on biomolecule corona determines complement opsonization efficiency of preclinical and clinical nanoparticles
by
Gifford, Geoffrey B
, Vu, Vivian P
, Groman, Ernest V
, Moghimi, Seyed Moein
, Saba, Laura
, Chen, Fangfang
, Halli, Benasutti
, Wang Guankui
, Simberg Dmitri
, Scheinman, Robert
in
Antibodies
/ Binding
/ Complement
/ Complement activation
/ Complement component C3
/ Dependence
/ Deposition
/ Efficiency
/ Immunoglobulins
/ Inflammation
/ Iron oxides
/ Macrophages
/ Nanoparticles
/ Nanostructured materials
/ Opsonization
/ Plasma proteins
/ Proteins
2019
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Immunoglobulin deposition on biomolecule corona determines complement opsonization efficiency of preclinical and clinical nanoparticles
by
Gifford, Geoffrey B
, Vu, Vivian P
, Groman, Ernest V
, Moghimi, Seyed Moein
, Saba, Laura
, Chen, Fangfang
, Halli, Benasutti
, Wang Guankui
, Simberg Dmitri
, Scheinman, Robert
in
Antibodies
/ Binding
/ Complement
/ Complement activation
/ Complement component C3
/ Dependence
/ Deposition
/ Efficiency
/ Immunoglobulins
/ Inflammation
/ Iron oxides
/ Macrophages
/ Nanoparticles
/ Nanostructured materials
/ Opsonization
/ Plasma proteins
/ Proteins
2019
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Immunoglobulin deposition on biomolecule corona determines complement opsonization efficiency of preclinical and clinical nanoparticles
by
Gifford, Geoffrey B
, Vu, Vivian P
, Groman, Ernest V
, Moghimi, Seyed Moein
, Saba, Laura
, Chen, Fangfang
, Halli, Benasutti
, Wang Guankui
, Simberg Dmitri
, Scheinman, Robert
in
Antibodies
/ Binding
/ Complement
/ Complement activation
/ Complement component C3
/ Dependence
/ Deposition
/ Efficiency
/ Immunoglobulins
/ Inflammation
/ Iron oxides
/ Macrophages
/ Nanoparticles
/ Nanostructured materials
/ Opsonization
/ Plasma proteins
/ Proteins
2019
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Immunoglobulin deposition on biomolecule corona determines complement opsonization efficiency of preclinical and clinical nanoparticles
Journal Article
Immunoglobulin deposition on biomolecule corona determines complement opsonization efficiency of preclinical and clinical nanoparticles
2019
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Overview
Deposition of complement factors (opsonization) on nanoparticles may promote clearance from the blood by macrophages and trigger proinflammatory responses, but the mechanisms regulating the efficiency of complement activation are poorly understood. We previously demonstrated that opsonization of superparamagnetic iron oxide (SPIO) nanoworms with the third complement protein (C3) was dependent on the biomolecule corona of the nanoparticles. Here we show that natural antibodies play a critical role in C3 opsonization of SPIO nanoworms and a range of clinically approved nanopharmaceuticals. The dependency of C3 opsonization on immunoglobulin binding is almost universal and is observed regardless of the complement activation pathway. Only a few surface-bound immunoglobulin molecules are needed to trigger complement activation and opsonization. Although the total amount of plasma proteins adsorbed on nanoparticles does not determine C3 deposition efficiency, the biomolecule corona per se enhances immunoglobulin binding to all nanoparticle types. We therefore show that natural antibodies represent a link between biomolecule corona and C3 opsonization, and may determine individual complement responses to nanomedicines.Immunoglobulins mediate deposition of the third complement protein (C3) on the biomolecule corona of nanoparticles, promoting complement activation.
Publisher
Nature Publishing Group
Subject
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